Blind Estimation of Spreading Code Using Inherent Linear Relation in Non-Cooperative Contexts

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초록

In non-cooperative contexts, estimating the parameters of spreading code generated from LFSRs is essential for recovering messages from received DSSS signals. This paper proposes a method to improve estimation performance of spreading codes by leveraging the inherent linear relation in spreading code due to LFSR. To achieve this, the spreading code is initially estimated by a conventional algorithm. Subsequences are then generated by decimating the initially estimated code, and their generating polynomials are identified using the Berlekamp-Massey algorithm. Using the polynomials, sequences satisfying the linear relation are reconstructed, and the original spreading code is recovered as the reverse decimated sequence with the smallest Hamming distance to the initially estimated spreading code. We validate the method through an analysis of estimation accuracy improvement and computational complexity reduction through simulations.

키워드

blind estimationdirect sequence spread spectrumm-sequencenon-cooperative contextsSEQUENCE ESTIMATIONBLIND ESTIMATIONRECONSTRUCTIONSCRAMBLER
제목
Blind Estimation of Spreading Code Using Inherent Linear Relation in Non-Cooperative Contexts
저자
Kim, DongyeongJang, YeonsooYoon, Dongweon
DOI
10.1109/TAES.2025.3551684
발행일
2025-08
유형
Article
저널명
IEEE Transactions on Aerospace and Electronic Systems
61
4
페이지
10904 ~ 10912